Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy

Molybdenum-doped diamond-like carbon (Mo-DLC) coatings have been deposited on titanium β-21S alloy (Ti–15Mo–3Nb–3Al–0.2Si) using plasma-enhanced chemical vapor deposition (PECVD) equipped with pulsed-DC magnetron sputtering. Mo contents in the deposited coatings have been controlled with an applied...

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Main Authors: Dilli Babu Padmanaban, Loganathan Mohan, Preetam Giri, Parthasarathi Bera, Chinnasamy Anandan, Harish C. Barshilia
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:C
Subjects:
XPS
Online Access:https://www.mdpi.com/2311-5629/7/1/1
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spelling doaj-c83a3c10afb44a018f7395bb7e7b221f2020-12-23T00:01:58ZengMDPI AGC2311-56292021-12-0171110.3390/c7010001Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S AlloyDilli Babu Padmanaban0Loganathan Mohan1Preetam Giri2Parthasarathi Bera3Chinnasamy Anandan4Harish C. Barshilia5Surface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaSurface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaSurface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaSurface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaSurface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaSurface Engineering Division, CSIR–National Aerospace Laboratories, Bengaluru 560017, IndiaMolybdenum-doped diamond-like carbon (Mo-DLC) coatings have been deposited on titanium β-21S alloy (Ti–15Mo–3Nb–3Al–0.2Si) using plasma-enhanced chemical vapor deposition (PECVD) equipped with pulsed-DC magnetron sputtering. Mo contents in the deposited coatings have been controlled with an applied sputtering pulse duty cycle. Chemical composition, structure, morphology, and topography have been studied using X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), and atomic force microscopy (AFM), respectively. XRD pattern of the coating with highest Mo content shows the presence of carbide phase. Smooth features with low roughness values are observed in low Mo content coating, whereas high Mo content coating shows granular characteristics with a high roughness value. Raman spectra reveal the increased graphitic content for the highest metal concentration in the coatings, wherein the nanohardness is also determined to be highest, at about ~18–19 GPa. Furthermore, the ball-on-disk tribometry test on Mo-DLC coating with highest nanohardness shows a low coefficient of friction (COF) of 0.2 with low wear loss compared to that of the substrate (0.62).https://www.mdpi.com/2311-5629/7/1/1diamond-like carbonmolybdenum dopingtitanium β-21SXPSRaman spectroscopywear
collection DOAJ
language English
format Article
sources DOAJ
author Dilli Babu Padmanaban
Loganathan Mohan
Preetam Giri
Parthasarathi Bera
Chinnasamy Anandan
Harish C. Barshilia
spellingShingle Dilli Babu Padmanaban
Loganathan Mohan
Preetam Giri
Parthasarathi Bera
Chinnasamy Anandan
Harish C. Barshilia
Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
C
diamond-like carbon
molybdenum doping
titanium β-21S
XPS
Raman spectroscopy
wear
author_facet Dilli Babu Padmanaban
Loganathan Mohan
Preetam Giri
Parthasarathi Bera
Chinnasamy Anandan
Harish C. Barshilia
author_sort Dilli Babu Padmanaban
title Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
title_short Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
title_full Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
title_fullStr Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
title_full_unstemmed Effect of Molybdenum Content on Mechanical and Tribological Properties of Diamond-Like Carbon Coatings over Titanium β-21S Alloy
title_sort effect of molybdenum content on mechanical and tribological properties of diamond-like carbon coatings over titanium β-21s alloy
publisher MDPI AG
series C
issn 2311-5629
publishDate 2021-12-01
description Molybdenum-doped diamond-like carbon (Mo-DLC) coatings have been deposited on titanium β-21S alloy (Ti–15Mo–3Nb–3Al–0.2Si) using plasma-enhanced chemical vapor deposition (PECVD) equipped with pulsed-DC magnetron sputtering. Mo contents in the deposited coatings have been controlled with an applied sputtering pulse duty cycle. Chemical composition, structure, morphology, and topography have been studied using X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), and atomic force microscopy (AFM), respectively. XRD pattern of the coating with highest Mo content shows the presence of carbide phase. Smooth features with low roughness values are observed in low Mo content coating, whereas high Mo content coating shows granular characteristics with a high roughness value. Raman spectra reveal the increased graphitic content for the highest metal concentration in the coatings, wherein the nanohardness is also determined to be highest, at about ~18–19 GPa. Furthermore, the ball-on-disk tribometry test on Mo-DLC coating with highest nanohardness shows a low coefficient of friction (COF) of 0.2 with low wear loss compared to that of the substrate (0.62).
topic diamond-like carbon
molybdenum doping
titanium β-21S
XPS
Raman spectroscopy
wear
url https://www.mdpi.com/2311-5629/7/1/1
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